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1.
根据腐殖填料生物滤池及石英砂普通生物滤池的氨氮去除效率、表面水力负荷及微生物量差异,比较两者氨氮降解速率及比降解速率,对腐殖填料生物滤池的氨氮降解特征进行分析。结果表明,在相同运行方式及外界环境下,腐殖填料滤池表面水力负荷数倍于石英砂普通生物滤池;腐殖填料生物滤池单位体积平均氨氮降解速率高达31.5 g NH4+-N/(m3.d),是石英砂普通生物滤池的5.4倍;腐殖填料生物滤池氨氮比降解速率为4.1×10-2μg NH4+-N/(g微生物碳.d),约为石英砂普通生物滤池的4倍。腐殖填料生物滤池能负载较高的生物量,抗堵塞性能较强,系统内特异微生物对氨氮降解能力较高,是一种优良的降解氨氮的生物滤池。  相似文献   

2.
生物砂滤池处理生活污水的研究   总被引:1,自引:0,他引:1  
选取不同粒径的河砂及填料厚度构筑生物砂滤池,研究生活污水主要污染组分的去除规律.结果表明:(1)COD的去除主要发生在生物砂滤池的中上部,在距填料顶部1.1 m处,COD已降到较低的水平,实验第1、3、7天COD分别为67.07、52.63、74.67 mg/L,COD去除率分别达到64.98%、69.05%及68.1...  相似文献   

3.
曝气生物滤池填料的研究现状与展望   总被引:2,自引:0,他引:2  
曝气生物滤池是一种将生物氧化机理与深床过滤机理有机结合的新型污水生物处理工艺,其中填料在曝气生物滤池中的作用至关重要,微生物降解有机物性能的优劣很大程度上取决于填料的特性。同时综述了近几年来国内外对曝气生物滤池填料的研究现状,并指出其今后的研究和开发重点。  相似文献   

4.
混凝-Fenton-BAF深度处理垃圾渗滤液中试研究   总被引:5,自引:0,他引:5  
针对经过SBR处理后,难以再进一步生化降解的垃圾渗滤液,提出混凝-Fenton-曝气生物滤池(BAF)工艺进行深度处理.首先利用混凝去除SBR出水的悬浮性有机物,降低Fenton试剂的处理成本;然后采用Fenton试剂进行氧化处理,既降低垃圾渗滤液的COD值,又提高其可生化性,最后通过BAF工艺去除有机物,实验结果表明,在SBR出水COD为600~800 mg/L的情况下,最终出水的COD低于80 mg/L,处理成本仅为2.6元/t.  相似文献   

5.
采用实验室规模的生物滤池对含硫化氢、氨和微生物气溶胶的气体进行处理,并对海绵、陶粒、堆肥和空心塑料小球4种物质作为反应器填料的性能进行比较。结果表明,不同填料生物滤池对硫化氢、氨和微生物气溶胶的去除效率明显不同,去除效率从高到低的顺序依次为海绵、陶粒、堆肥和空心塑料小球生物滤池。海绵和陶粒生物滤池出气异养细菌和真菌主要以小粒径粒子为主。在同样的进气和运行条件下,堆肥填料层的压力降最大,其次是陶粒和空心塑料小球填料层,海绵填料层的压力降最小。对4种填料的性能进行综合比较,海绵和陶粒较适宜作为处理硫化氢、氨和微生物气溶胶的生物滤池填料。  相似文献   

6.
采用实验室规模的生物滤池对含硫化氢、氨和微生物气溶胶的气体进行处理,并对海绵、陶粒、堆肥和空心塑料小球4种物质作为反应器填料的性能进行比较。结果表明,不同填料生物滤池对硫化氢、氨和微生物气溶胶的去除效率明显不同,去除效率从高到低的顺序依次为海绵、陶粒、堆肥和空心塑料小球生物滤池。海绵和陶粒生物滤池出气异养细菌和真菌主要以小粒径粒子为主。在同样的进气和运行条件下,堆肥填料层的压力降最大,其次是陶粒和空心塑料小球填料层,海绵填料层的压力降最小。对4种填料的性能进行综合比较,海绵和陶粒较适宜作为处理硫化氢、氨和微生物气溶胶的生物滤池填料。  相似文献   

7.
垃圾焚烧发电厂渗滤液生化出水是一种高盐,且含腐殖酸类和水溶性小分子有机物的复杂废水.本研究提出了采用Ca(OH)2预处理,并催化臭氧氧化处理的新工艺路线,对工艺参数和催化过程机理进行了分析.结果表明,Ca(OH)2可以有效地预处理去除生化出水中的腐殖酸类大分子有机物,当其用量为12 g/L时,可使COD的去除率达到70%~75%.Ca(OH)2可强化催化臭氧氧化处理预处理废水中剩余的难降解小分子有机物,其机理可能是及时去除了反应体系中生成的碳酸根离子,其适宜用量为2 g/L废水.当搅拌转速小于600 r/min,进口气相中臭氧浓度小于66.24 mg/L时,增大反应体系搅拌强度和进口臭氧浓度可以强化废水COD的去除速率.该工艺在深度处理垃圾渗滤液生化出水中难降解有机物领域具有较大的应用前景.  相似文献   

8.
固定化微生物法去除模拟渗滤液中氨氮的研究   总被引:1,自引:0,他引:1  
采用固定化微生物曝气生物滤池(I-BAF)技术成功处理了模拟垃圾渗滤液,探讨了pH和溶解氧(DO)对系统脱氮性能的影响。结果表明,固定化微生物曝气生物滤池反应系统启动迅速,运行稳定,可以有效去除模拟垃圾渗滤液中的有机物和氨氮,其去除率分别达到97.1%和99.9%。在pH为7.5~8.5之间,DO 4.0 mg/L左右的条件下对模拟垃圾渗滤液中氮的去除最为有利,同步硝化反硝化效率以及总氮去除率均达到最高,分别为96.2%和94.3%。这主要是由于I-BAF系统中大孔载体提供了厌氧-兼氧-好氧的微环境,使硝化和反硝化反应在同一个反应器内发生,共同作用实现模拟垃圾渗滤液中总氮的去除。  相似文献   

9.
为了确定3种工艺:混凝-沉淀-砂滤-后臭氧-生物活性炭滤池(工艺Ⅰ)、预臭氧-混凝-沉淀-砂滤-生物活性炭滤池(工艺Ⅱ)和预臭氧-混凝-沉淀-砂滤-后臭氧-生物活性炭滤池(工艺Ⅲ)中臭氧的最优投加量和投加方式,采用动态实验进行了不同工况下有机物的去除效果研究,并从臭氧利用率的角度对3种工艺进行比较。同时,为了明晰工艺Ⅲ中各个单元对有机物的去除机制,研究了各处理阶段的有机物分子质量分布情况。结果表明,工艺Ⅲ在最佳工况下出水水质最优,但单位臭氧利用率较低,单位臭氧去除CODMn、TOC分别为0.92 mg/L和0.55 mg/L。该工艺中预臭氧可显著降低有机物分子质量水平,混凝沉淀砂滤主要去除分子质量3 k Da的有机物,后臭氧则将大分子有机物进一步氧化为分子质量3k Da的有机物,后者通过生物活性炭滤池得到有效地去除。因此,通过臭氧和生物活性炭的联用,能够有效去除有机物,是一种适宜的饮用水深度处理工艺。  相似文献   

10.
生物处理含盐污水的盐抑制动力学   总被引:2,自引:0,他引:2  
生物处理含盐污水时,由于无机盐对生物系统的影响,常常会导致低的有机物去除速率和去除效率。为了定量盐度对有机物生物去除的影响,研究生物处理含盐污水的盐抑制动力学,为具体设计含盐污水生物处理过程提供依据。试验采用间歇活性污泥法,对含盐污水的有机物降解速率和去除效率进行了研究。为了获得基本数据,首先研究了淡水环境下的基质降解动力学,然后对10~35g/L盐度环境分别进行试验。试验发现,盐度对生物处理系统的抑制属于非竞争模式,同时影响了最大降解速率和饱和常数。试验确定的盐抑制常数KY为2333mg/L,并进一步给出了各盐度下有机物降解速率方程。  相似文献   

11.
不同人工湿地基质对污水总有机碳去除能力初探   总被引:1,自引:1,他引:0  
选择4种常见基质及基质配比,研究其碳含量和组分对污水中总有机碳(TOC)的去除影响。结果显示当污水的TOC浓度为27 mg/L时,4种基质都向水体中释放碳,且释放碳的大小顺序为:砂子-土壤-泥炭混合基质土壤砂子-土壤混合基质砂子,基质的碳含量越高,释放到水体中碳越多。3种基质对水体中TOC的去除率大小顺序为:土壤砂子-土壤混合物基质砂子,基质碳含量越高,微生物活性越强,对TOC的去除率越高。在第12天,砂子-土壤-泥炭混合基质处理中TOC浓度的增加,与其稳结合态有机碳含量较高有关。有机碳含量和组分影响了人工湿地基质对TOC的去除。  相似文献   

12.
纳米生态基对水产养殖污水的处理效果   总被引:5,自引:1,他引:4  
采用三因子四水平的正交设计,实验研究了纳米生态基在不同温度、溶解氧和水力停留时间下对水产养殖污水的处理效果,确定了纳米生态基处理养殖污水的最佳条件。结果表明,含氨氮和亚硝氮浓度较高的模拟养殖污水用纳米生态基挂膜,所需时间约为22 d。纳米生态基对氨氮的去除效果明显,平均去除率达到93.5%。对氨氮去除率的影响程度,水力停留时间>温度>溶解氧。当温度为30℃,DO为5.43 mg/L,HRT为0.33 h时,纳米生态基对氨氮的处理能力最佳,去除率达到94.6%。纳米生态基对亚硝氮的平均去除率为69.3%。对亚硝氮去除率的影响程度,水力停留时间>溶解氧>温度。当温度为21℃,DO为6.40 mg/L,HRT为0.33 h时,纳米生态基对亚硝氮的处理能力最佳,去除率为71.5%。纳米生态基处理养殖污水的最佳条件:温度为30℃,DO为6.40 mg/L,HRT为0.33 h。  相似文献   

13.
To enumerate microorganisms having colonized biofilters treating volatile organic compounds, it is necessary firstly to evaluate dispersion methods. Crushing, shaking and sonication were then tested for the removal of microflora from biofilters packing materials (peat and activated carbon). Continuous or discontinuous procedures, and addition of glass beads had no effect on the number of microorganisms removed from peat particles. The duration of treatment also had no effect for shaking and crushing, but the number of microorganisms after 60 min of treatment with ultrasound was significantly higher than that obtained after 0.5 min. The comparison between these methods showed that crushing was the most efficient for the removal of microorganisms from both peat and activated carbon. The comparison between three chemical dispersion agents showed that 1% Na-pyrophosphate was less efficient, compared with 200 mM phosphate buffer or 1% Na-hexametaphosphate. To optimize the cultivation of microorganisms, three different agar media were compared. Tryptic soy agar tenfold diluted (TSA 1/10) was the most suitable medium for the culture of microflora from a peat biofilter. For the activated carbon biofilter, there was no significant difference between Luria Bertoni, TSA 1/10, and plate count agar. The optimized extraction and enumeration protocols were used to perform a quantitative characterization of microbial populations in an operating laboratory activated carbon biofilter and in two parallel peat biofilters.  相似文献   

14.
BAF+常规工艺中砂滤池净水效果研究   总被引:3,自引:0,他引:3  
以广州某水厂源水为处理对象,研究在曝气生物滤池(BAF)+常规工艺中砂滤池的净水效果。研究表明,砂滤池出水CODMn、NH4+-N的平均值分别为1.19 mg/L和0.08 mg/L;相对于沉淀池出水,砂滤池对上述指标的平均去除率分别为27.41%和63.86%;砂滤池出水NO2--N几乎检测不出。砂滤池对分子量(10 K的溶解性有机物有较好的去除作用;砂滤池中DO下降了1.80 mg/L,分析表明在砂滤池中发生了完全硝化反应。  相似文献   

15.
Three columns each with 770 cm2 of surface area and 60-105 cm effective depth were set up for this study. These columns were filled with compacted, stabilized refuse. High-strength brewery wastewaters were uniformly trickled down the medium. Overall, 16 runs with various organic loadings were tested and the results demonstrated that the stabilized refuse had excellent capability in removing chemical oxygen demand (COD). The COD removal efficiency reached 95% at a depth of 60 cm at Q = 8 L/day for the initial COD of approximately 6000 mg/L and the efficiency increased to >99% at a depth of 90 cm (organic loading of 0.69 kg/m3/day). As would be expected, the filter performance is a function of flow rate, influent COD concentration, and bed depth. The Schulze equation is able to predict the COD removal performance well. The variations of pH, oxidation reduction potential, and volatile fatty acids indicated that the acidogenesis reaction occurred in the upper layers.  相似文献   

16.
矿化垃圾生物反应床处理畜禽废水的试验研究   总被引:2,自引:0,他引:2  
矿化垃圾具有较大的吸附比表面积 ,较强的阳离子交换容量 (6 7.9meq/ 10 0 g) ,无二次污染 ,是很好的污水处理生物介质。借助于矿化垃圾柱物理模型试验装置 ,在实验室进行了历时 6个月的矿化垃圾反应床处理畜禽污水试验。结果表明 ,系统出水有较大改善 ,出水溶解氧有较大提高 ,pH值呈中性。该处理系统对畜禽污水中色度、SS、CODCr、BOD5、NH3 N和总磷的平均去除率分别为 6 4.7%、5 4.2 9%、75 .33 %、88.71%、94.5 5 %和 99.83 % ;处理出水中CODCr、BOD5、NH4 N和总磷的平均浓度分别为 185 .6 1mg/L、14.94mg/L、2 6 .79mg/L和 0 .0 79mg/L ;总氮的平均去除率仅为 2 1.2 9%。反应器运行 6个月以来 ,运转良好 ,未发生阻塞现象  相似文献   

17.
Packing materials play a key role in the performance of bioreactors for waste gas treatment and particularly in biofilter applications. In this work, the performance of four differently packed biofilters operated in parallel for the treatment of relatively high inlet concentration of toluene was studied. The reactors were compared for determining the suitability of coconut fiber, digested sludge compost from a waste water treatment plant, peat and pine leaves as packing materials for biofiltration of toluene. A deep characterisation of materials was carried out. Biological activity and packing capabilities related to toluene removal were determined throughout 240 days of operation under different conditions of nutrients addition and watering regime. Also, biofilters recovering after a short shutdown was investigated. Nutrient addition resulted in improved removal efficiencies (RE) and elimination capacities (EC) of biofilters reaching maximum ECs between 75 and 95 g m(-3)h(-1) of toluene. In the first 80 days, the pH decreased progressively within the reactors, causing a population change from bacteria to fungi, which were the predominant decontaminant microorganisms thereafter. All reactors were found to recover the RE rapidly after a 5 days shutdown and, in a maximum of 7 days, all reactors had been completely recuperated. These results point out that fungal biofilters are a suitable choice to treat high loads of toluene. In general, coconut fiber and compost biofilters exhibited a better performance in terms of elimination capacity and long-term stability.  相似文献   

18.
This study identified material with high phosphorus sorption suitable for bioretention filter media. Materials examined were fly ash, two expanded shales, peat moss, limestone, and two common Oklahoma soils--Teller loam and Dougherty sand. The peat moss was a phosphorus source, while the two soils, limestone, and one expanded shale had only modest sorption capacity. One expanded shale and the fly ash had significant phosphorus sorption. Fly ash is unsuitable for use in a pure form, as a result of its low permeability, but phosphorus sorption on the sand was increased significantly with the incorporation of small amounts of fly ash. Column leaching experiments found that the sand with 2.5 and 5% fly ash and the better expanded shale had linear, non-equilibrium transport retardation factors of 272, 1618, and 185, with first-order rate coefficients of 0.153, 0.0752, and 0.113 hour(-1), respectively. Desorption experiments showed that the phosphorus sorption on the sand/fly ash mixture is largely nonreversible. Transport simulation assuming a 1-m-deep sand/fly ash treatment layer, with 5% of the watershed area, showed that the sand/fly ash filter media could effectively treat 1 mg/L influent for 12 years in a paved watershed and 34 years in a grassed watershed before exceeding Oklahoma's scenic rivers' phosphorus criterion of 0.037 mg/L. Significant phosphorus removal would continue for over 100 years.  相似文献   

19.
新型活性炭固定化产品的制备及其处理焦化废水的特性   总被引:1,自引:0,他引:1  
为解决优势菌种工程应用,研究不同固定化方法、载体和结构的固定化产品对焦化废水的降解特性。用活性炭粉末吸附菌种后,与聚乙烯醇和海藻酸钠混合制备了新型固定化球;用聚乙烯醇和海藻酸钠包埋吸附菌种的活性炭纤维毡,与立体弹性塑料填料连用,制备出3种不同形状的活性炭纤维膜片固定化产品复合填料。将游离菌和制备的4种活性炭固定化产品投入A/A/O工艺系统平行实验,考察处理焦化废水的效果。结果表明,活性炭纤维膜片固定化产品复合填料对焦化废水的降解能力优于其他固定化产品:缺氧池出水硝酸盐氮和亚硝酸盐氮浓度分别稳定在1.96 mg/L和0.49 mg/L,未产生氮的累积现象,COD去除率可达到60.92%。好氧池COD和氨氮降解效率分别为78.83%和85.52%,苯酚、氰化物降解效率均为97%以上。  相似文献   

20.
经长时间稳定化形成的矿化污泥中,含有种类丰富和数量繁多的降解性微生物,具有处理渗滤液的潜力。建立3个矿化污泥生物反应器,即C1(粉煤灰0%),C2(粉煤灰9.1%),C3(粉煤灰16.7%),以处理垃圾填埋场老龄渗滤液。在单级矿化污泥反应器中,当进水COD和NH3-N分别约为1350和900 mg/L时,水力负荷为17.7~70.8 L/(m3.d),COD去除率可超过65%,氨氮的去除率可超过94%。粉煤灰的加入一定程度上降低了COD去除率,但有助于氨氮的去除。在二级矿化污泥生物反应器中(即C3~C1串联),水力负荷为35.4 L/(m3.d)的工况下,当COD、TOC、IC和NH3-N分别为1 500~2 500,500~900,1 200~1 600和1 200~1 450 mg/L时,出水可达到COD<300 mg/L,TOC<180 mg/L,IC<100 mg/L,NH3-N<5 mg/L。但是,矿化污泥生物反应器对渗滤液总氮的去除率较低,仅为20%左右。  相似文献   

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